简体中文

Luxiner launches LXR platform to set new standards for industrial laser microfabrication

468
2024-03-25 14:03:24
查看翻译

Luxiner, a globally renowned laser technology leader, proudly launches its latest innovative product, the groundbreaking LXR ultra short pulse laser platform. This cutting-edge technology represents a significant leap in industrial laser processing, providing unparalleled performance, versatility, and reliability.

In today's rapidly changing industrial environment, laser technology plays a crucial role in many fields, from microelectronics and semiconductors to automotive manufacturing and biomedical applications. Realizing the constantly evolving demand for higher precision, faster processing speeds, and more efficient material processing solutions, Luxiner has responded to the challenges by launching the LXR platform.

The LXR platform is designed specifically to meet the needs of modern industrial applications. Featuring a robust design with 24/7 operational readiness, reliable handling, and highly modular architecture that meets the needs of every customer; With its unique requirements, Luxiner's LXR platform has set a new benchmark for industrial USP lasers.

The LXR platform provides ultra short laser energy pulses to ensure high-quality material processing with minimal heat generation. This patented technology ensures precise ablation, minimal thermal damage, and excellent control of laser beam parameters, producing excellent results even in the most demanding applications.

The main functions of the LXR platform include: pulse energy up to 160 μ J: Ensure efficient and accurate material processing in various applications.
Power up to 160 W: promotes fast and efficient laser processing, improving productivity.
Beam quality M2<1.2: Provides excellent beam control, achieving excellent processing quality and accuracy.
Flexible pulse width: From a standard pulse width of 800fs to factory settings up to 12 ps, it can be optimized for different materials and applications.

Supports multiple wavelengths, including 1030 nm, 515 nm, and 343 nm, providing flexibility for various industrial applications.
Full digital control of pulse output: allows for precise customization of laser processing parameters to achieve the desired results.
Standard burst and fast burst modes: support optimization for deep carving, micro machining, surface texture, and more.
The blasting energy can reach up to 0.8 mJ, ensuring efficient and accurate material ablation even in demanding applications.

"We are pleased to bring the LXR platform to the market," said Antonio Raspa, Product Manager of Luxiner Solid State Laser. The unique feature of the LXR series platform lies in its unparalleled control and flexibility in laser pulse output. Its intuitive hardware and software interface enable seamless integration into the production line, simplifying the programming of operating parameters.

Luxiner has earned an excellent reputation in producing powerful and reliable laser sources, and the LXR platform continues this tradition. The LXR platform ensures optimal uptime and productivity, backed by Luxiner's excellent customer support and service.

The development of the LXR platform highlights Luxiner's commitment to innovation, industry collaboration, and deep understanding of customer needs. Luxiner's team of engineers and scientists worked tirelessly to bring this breakthrough technology to the market, setting clear industry standards for USP laser technology.

Source: Laser Net

相关推荐
  • MIT researchers have demonstrated a novel chip based resin 3D printer

    Researchers from the Massachusetts Institute of Technology and the University of Texas at Austin showcased the first chip based resin 3D printer. Their concept verification tool consists of a millimeter sized photon chip that emits a programmable beam of light into resin holes, which solidify into a solid structure when exposed to light.The prototype processor does not have mobile components, but ...

    2024-06-17
    查看翻译
  • Dark Solitons Discovered in Ring Semiconductor Lasers

    Dark solitons - the extinction region in a bright background - spontaneously form in a ring semiconductor laser. Observations conducted by an international research group may lead to improvements in molecular spectroscopy and integrated optoelectronics.Frequency comb - a pulse laser that outputs light at equidistant frequencies - is one of the most important achievements in the history of laser ph...

    2024-02-01
    查看翻译
  • New insights into the interaction between femtosecond laser and living tissue

    The N-linear optical microscope has completely changed our ability to observe and understand complex biological processes. However, light can also harm organisms. However, little is known about the mechanisms behind the irreversible disturbances of strong light on cellular processes.To address this gap, the research teams of Hanieh Fattahi and Daniel Wehner from the Max Planck Institute for Photos...

    2024-06-07
    查看翻译
  • Osram has received over 300 million euros in German investment to develop next-generation optoelectronic semiconductor technology

    Recently, ams Osram, a developer of smart sensors and transmitters, announced that it expects to receive over 300 million euros in funding from the German Federal Government and the Free State of Bavaria over the next five years.This funding is aimed at promoting Osram's development of the next generation optoelectronic semiconductor technology in Regensburg, Germany. The IPCEI funding in this bat...

    2023-09-25
    查看翻译
  • Comparative Study of Resistance Spot Welding and Laser Spot Welding of Ultra High Strength Steel for Vehicles

    Researchers from Annamarai University in India and South Ural State University in Russia reported a comparative study of resistance spot welding and laser spot welding of ultra-high strength steel for automobiles. The related research was published in The International Journal of Lightweight Materials and Manufacturing under the title "A comparative study on resistance spot and laser beam spot wel...

    2024-09-05
    查看翻译